Introducing an alternative oxidant for Spiro-OMeTAD with the reduction product to passivate perovskite defects?
Journal of Materials Chemistry C Pub Date: 2023-07-25 DOI: 10.1039/D3TC01601C
Abstract
Spiro-OMeTAD has been playing an indispensable role in highly efficient perovskite solar cells (PSCs). However, a long air oxidation process is usually required, which is harmful to the device stability. Herein, a simple and efficient doping strategy is proposed by adding a low-cost organic oxidant (2-iodoxybenzoic acid, IBX) to spiro-OMeTAD. IBX can accelerate the oxidation process of spiro-OMeTAD, thus effectively improving the conductivity and hole mobility of hole transport layers. What's more interesting, it is found that the reduction product of IBX, 2-iodobenzoic acid, can passivate the I vacancies and uncoordinated Pb2+ defects on the surface of perovskite, thereby inhibiting nonradiative recombination. Ultimately, the IBX-treated PSCs achieved a power conversion efficiency of 22.45%, superior to that of the pristine device (20.42%). In addition, the stability of the IBX-based device is improved. Overall, the cost-effective, facile and dual functional doping strategy is quite promising in improving the efficiency and stability of PSCs.
Recommended Literature
- [1] An all-solid-state imprinted polymer-based potentiometric sensor for determination of bisphenol S? Rongning Liang,Tanji Yin,Ruiqing Yao,Wei QinRSC Adv., 2016,6, 73308-73312 10.1039/C6RA14461F
- [2] An assay for the enzyme N-acetyl-β-d-glucosaminidase (NAGase) based on electrochemical detection using screen-printed carbon electrodes (SPCEs) R. M. Pemberton,J. P. Hart,T. T. MottramAnalyst, 2001,126, 1866-1871 10.1039/B104874K
- [3] An amphoteric reactivity of a mixed-valent bis(μ-oxo)dimanganese(iii,iv) complex acting as an electrophile and a nucleophile? Muniyandi Sankaralingam,So Hyun Jeon,Yong-Min Lee,Mi Sook Seo,Wonwoo NamDalton Trans., 2016,45, 376-383 10.1039/C5DT04292E
- [4] An amplified fluorescence detection of T4 polynucleotide kinase activity based on coupled exonuclease III reaction and a graphene oxide platform? Ni-Na Sun,Fengli Qu,Xiaobing Zhang,Shufang Zhang,Jinmao YouAnalyst, 2015,140, 1827-1831 10.1039/C4AN01953A
- [5] An intermolecular C–H oxidizing strategy to access highly fused carbazole skeletons from simple naphthylamines? Christian K. Rank,Alexander W. Jones,Tatjana Wall,Patrick Di Martino-Fumo,Sarah Schr?ck,Markus Gerhards,Frederic W. PatureauChem. Commun., 2019,55, 13749-13752 10.1039/C9CC05240B
- [6] Aggregation-induced emission enhancement in halochalcones? Patricia A. A. M. Vaz,Jo?o Rocha,Artur M. S. SilvaNew J. Chem., 2016,40, 8198-8201 10.1039/C6NJ01387B
- [7] An automatic determination of thoria in thoria-urania mixtures Analyst, 1966,91, 208-210 10.1039/AN9669100208
- [8] An artificial CO-releasing metalloprotein built by histidine-selective metallation? Inês S. Albuquerque,Hélia F. Jeremias,Miguel Chaves-Ferreira,Dijana Matak-Vinkovic,Omar Boutureira,Carlos C. Rom?oChem. Commun., 2015,51, 3993-3996 10.1039/C4CC10204E
- [9] Aggregation of biologically important peptides and proteins: inhibition or acceleration depending on protein and metal ion concentrations Benjamin Gabriel Poulson,Kacper Szczepski,Joanna Izabela Lachowicz,Lukasz Jaremko,Abdul-Hamid Emwas,Mariusz JaremkoRSC Adv., 2020,10, 215-227 10.1039/C9RA09350H
- [10] An aqueous ammonia sensor based on an inkjet-printed polyaniline nanoparticle-modified electrode Karl Crowley,Eimer O'Malley,Aoife Morrin,Malcolm R. Smyth,Anthony J. KillardAnalyst, 2008,133, 391-399 10.1039/B716154A
Journal Name:Journal of Materials Chemistry C
research_products
-
CAS no.: 89640-58-4